Kahl G, Rosenstock G, Lange H
Botanisches Institut der Universität Frankfurt a. M., Frankfurt a. M., Deutschland.
Planta. 1969 Dec;87(4):365-71. doi: 10.1007/BF00388321.
Differential derepression of the genome of potato tuber cells by slicing of the tuber tissue leads to cell divisions. This mitotic activity is totally suppressed by Tris-(hydroxymethyl)-aminomethane (Tris)-buffer widely used in biochemical research. The blockage is reversible if tissue slices are transferred to water in order to wash out the Tris-ions.The actual reason for the inhibition of mitotic activity by Tris is as yet unknown. As a possible mechanism of action an uncoupling of electron transfer from phosphorylation in the mitochondrial respiratory chain is discussed. However, experiments show no difference in O2-absorption between Tris-treated tissue and control in water. Moreover the application of several inhibitors of respiration causes exactly the same effects in both tissues. Amytal (blockage of flavoproteids) has no influence on the respiratory rate at any time. Antimycin A (blockage of electron flow from cytochrome b to cytochrome c) as well as HCN (inhibition of cytochrome-oxidase) inhibit respiration of both tissues during the first 24 hours after derepression. Later on the respiration becomes resistant to both inhibitors. So the quality of respiration is assumed to be the same in mitotic active potato slices as in the Tris-treated tissue.Recent results of biochemical analyses of events in carbohydrate breakdown of the tissues in question point to a differential effect of Tris on several enzymes as possible reason for its inhibitory action.
通过切割块茎组织实现的马铃薯块茎细胞基因组差异去抑制会导致细胞分裂。这种有丝分裂活性被生物化学研究中广泛使用的三(羟甲基)氨基甲烷(Tris)缓冲液完全抑制。如果将组织切片转移到水中以洗去Tris离子,这种阻断是可逆的。Tris抑制有丝分裂活性的实际原因尚不清楚。作为一种可能的作用机制,有人讨论了线粒体呼吸链中电子传递与磷酸化的解偶联。然而,实验表明,Tris处理的组织与水中的对照在氧气吸收方面没有差异。此外,几种呼吸抑制剂的应用在两种组织中产生的效果完全相同。阿米妥(抑制黄素蛋白)在任何时候对呼吸速率都没有影响。抗霉素A(阻断从细胞色素b到细胞色素c的电子流)以及HCN(抑制细胞色素氧化酶)在去抑制后的最初24小时内抑制两种组织的呼吸。后来呼吸对这两种抑制剂都产生了抗性。因此,有丝分裂活跃的马铃薯切片与Tris处理的组织中的呼吸质量被认为是相同的。对相关组织碳水化合物分解过程中生化分析的最新结果表明,Tris对几种酶的差异作用可能是其抑制作用的原因。